热老化对电缆绝缘超低频介电性能和伏安特性的影响
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国家自然科学基金资助项目(U23B20115)


Effect of thermal ageing on ultra-low frequency dielectric properties and volt-ampere characteristics of cable insulation
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    摘要:

    为拓展超低频介损检测技术在电缆绝缘状态评估中的应用,提高超低频介电谱的测试效率,文中基于改进频域介电谱(improved frequency domain spectroscopy, iFDS)快速超低频介损测试仪,对热老化前后的交联聚乙烯(cross-linked polyethylene, XLPE)电缆绝缘介电性能进行测试研究,提出电缆绝缘热老化状态表征的新方法。首先,通过热老化实验制备不同老化程度的XLPE电缆绝缘试样。然后,对不同老化程度的XLPE试样进行超低频范围(10-3~103 Hz)的介电测试,发现超低频介电谱对XLPE绝缘状态变化敏感,介损值随着测试频率下降逐渐上升,试样老化越严重,超低频介损上升幅度越大,该方法抗干扰性强,能有效检测出绝缘老化的性能变化。通过介电理论分析,认为在超低频区域介损值急剧增大的主要原因为直流电导和界面极化的共同作用。最后,基于超低频介电谱与伏安特性的关联,提出采用包含激励电压、响应电流幅值和相位信息的伏安特性滞回曲线,对电缆绝缘老化状态进行评估,并提取偏转角变化率与曲线形变率作为特征量,表征电缆绝缘的老化状态。

    Abstract:

    To enhance the application of ultra-low frequency dielectric loss testing technology in evaluating cable insulation conditions and to improve the testing efficiency of ultra-low frequency dielectric spectroscopy, the dielectric properties of cross-linked polyethylene (XLPE) cable insulation before and after thermal aging are investigated using a improved frequency domain spectroscopy (iFDS). A novel method for characterizing the thermal aging state of cable insulation is proposed. Firstly, XLPE cable insulation samples with varying aging levels are prepared through thermal aging experiments. The dielectric properties of these aged XLPE samples are measured in the ultra-low frequency range from 10-3 Hz to 103 Hz. The results demonstrate that the ultra-low frequency dielectric spectrum is highly sensitive to changes in the XLPE state. As the test frequency decreases, the dielectric loss gradually increases, with more severely aged samples showing a more pronounced rise in dielectric loss. This indicates that ultra-low frequency dielectric loss exhibits strong anti-interference characteristics and can effectively detect XLPE aging conditions. Based on dielectric physics, the sharp increase in dielectric loss in the ultra-low frequency region is primarily attributed to the combined effects of DC conductance and interface polarization. Finally, a correlation between the ultra-low frequency dielectric spectrum and volt-ampere characteristics is established. A volt-ampere hysteresis loop, incorporating amplitude and phase information, is proposed to evaluate cable insulation aging. Relevant characteristic parameters, such as the rate of deflection angle change (RDA) and the rate of curve deformation (RCD), are extracted to characterize the aging status of cable insulation.

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孙海玉,蒋子宇,古国志,李恒宇,郭志家,赵学童.热老化对电缆绝缘超低频介电性能和伏安特性的影响[J].电力工程技术,2026,45(6):95-104. SUN Haiyu, JIANG Ziyu, GU Guozhi, LI Hengyu, GUO Zhijia, ZHAO Xuetong. Effect of thermal ageing on ultra-low frequency dielectric properties and volt-ampere characteristics of cable insulation[J]. Electric Power Engineering Technology,2026,45(6):95-104.

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  • 收稿日期:2025-10-24
  • 最后修改日期:2026-01-07
  • 在线发布日期: 2026-06-04
  • 出版日期: 2026-06-28
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